Published: October 13, 2020Nanopores in solid state membranes are a tool able to probe nanofluidic phenomena or can act as a single molecular sensor. They also have diverse applications in filtration, desalination, or osmotic power generation. Many of these applications involve chemical, or hydrostatic pressure differences which act on both the supporting membrane, and the ion transport through the pore. By using pressure differences between the sides of the membrane and an alternating current approach to probe ion transport, we investigate two distinct physical phenomena: the elastic deformation of the membrane through the measurement of strain at the nanopore, and the growth of ionic current rectification with pressure due to pore entranc...
Rectifying nanopores feature ion currents that are higher for voltages of one polarity compared to t...
International audienceFundamental understanding of ionic transport at the nanoscale is essential for...
Asymmetrical properties of ion transport have been found in single conical nanopores and partly char...
Nanopores in solid state membranes are a tool able to probe nanofluidic phenomena or can act as a si...
Nanoporous materials are involved in many industrial processes such as catalysis, filtration, chroma...
Nanopores are nanometer sized openings that are the connection between two electrolyte filled reserv...
Nanopores attracted a great deal of scientific interest as templates for biological sensors as well ...
Rectifying nanopores feature ion currents that are higher for voltages of one polarity compared to t...
ABSTRACT: Rectifying nanopores feature ion currents that are higher for voltages of one polarity com...
Asymmetrically shaped nanopores have been shown to rectify the ionic current flowing through pores i...
Nanopores exhibit behaviors not seen in the micro-scale, such as ion current rectification or ion se...
A detailed characterization of the physics of novel nanopore systems has the potential to revolution...
This work reports a comprehensive theoretical study of the transport-rectification properties of cyl...
International audiencePressure-driven ion transport through conical and hourglass-shape (double coni...
Previous reports on Poisson-Nernst-Planck (PNP) simulations of solid-state nanopores have focused on...
Rectifying nanopores feature ion currents that are higher for voltages of one polarity compared to t...
International audienceFundamental understanding of ionic transport at the nanoscale is essential for...
Asymmetrical properties of ion transport have been found in single conical nanopores and partly char...
Nanopores in solid state membranes are a tool able to probe nanofluidic phenomena or can act as a si...
Nanoporous materials are involved in many industrial processes such as catalysis, filtration, chroma...
Nanopores are nanometer sized openings that are the connection between two electrolyte filled reserv...
Nanopores attracted a great deal of scientific interest as templates for biological sensors as well ...
Rectifying nanopores feature ion currents that are higher for voltages of one polarity compared to t...
ABSTRACT: Rectifying nanopores feature ion currents that are higher for voltages of one polarity com...
Asymmetrically shaped nanopores have been shown to rectify the ionic current flowing through pores i...
Nanopores exhibit behaviors not seen in the micro-scale, such as ion current rectification or ion se...
A detailed characterization of the physics of novel nanopore systems has the potential to revolution...
This work reports a comprehensive theoretical study of the transport-rectification properties of cyl...
International audiencePressure-driven ion transport through conical and hourglass-shape (double coni...
Previous reports on Poisson-Nernst-Planck (PNP) simulations of solid-state nanopores have focused on...
Rectifying nanopores feature ion currents that are higher for voltages of one polarity compared to t...
International audienceFundamental understanding of ionic transport at the nanoscale is essential for...
Asymmetrical properties of ion transport have been found in single conical nanopores and partly char...